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Titlebook: Introduction to Electrical Circuit Theory; G. Williams Textbook 1973Latest edition Macmillan Publishers Limited 1973 circuit.circuits and

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发表于 2025-3-21 16:33:20 | 显示全部楼层 |阅读模式
期刊全称Introduction to Electrical Circuit Theory
影响因子2023G. Williams
视频videohttp://file.papertrans.cn/156/155233/155233.mp4
学科分类English Language Book Society student editions
图书封面Titlebook: Introduction to Electrical Circuit Theory;  G. Williams Textbook 1973Latest edition Macmillan Publishers Limited 1973 circuit.circuits and
Pindex Textbook 1973Latest edition
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发表于 2025-3-22 00:14:01 | 显示全部楼层
Methods of Analysis and Network Theorems, of resistors, the ideal circuit element of resistance is used to represent the physical resistor in order that analysis of the device may be achieved. Thus the ideal circuit element is a model of the physical device and as such it is a ‘lumped element’ representing a physical device which is usuall
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Transient Response of First- and Second-Order Networks, capacitances and inductances is time varying because of the time necessary for the exchange of energy between capacitive and inductive elements. Expressed in terms of volt-ampere equations, the volt-ampere equations of capacitive and inductive elements are time variant whilst that of resistance is
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Steady-State Sinusoidal Response of Networks,electrical systems of all types and therefore many techniques have been developed to deal with their application to electrical systems. In the analysis of section 4.6 they occurred in the natural responses of . and . circuits and it is therefore to be expected that the response of electrical network
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Methodisches Vorgehen und Forschungsdesign,may be used as the basic one, the most natural, and the one most universally used is that of mass, length and time. In the SI (Système Internationale d’Unités) system of units the fundamental . associated with the basic physical quantities are the metre, kilogram and second which are defined respect
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https://doi.org/10.1007/978-3-662-30000-8rgy endow a network with non-instantaneous properties by virtue of the time necessary for them to increase or decrease their stored energy. A network consisting only of sources and resistances does not possess transient properties because the volt-ampere equations of the branches do not involve time
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